论文标题

从不同染色的连续数字整体幻灯片图像融合信息的自动框架:肾脏组织学案例研究

An automatic framework for fusing information from differently stained consecutive digital whole slide images: A case study in renal histology

论文作者

Merveille, Odyssee, Lampert, Thomas, Schmitz, Jessica, Forestier, Germain, Feuerhake, Friedrich, Wemmert, Cédric

论文摘要

目的:本文提出了一个自动图像处理框架,以提取定量的高级信息信息,描述了连续的整个幻灯片图像(WSIS)中肾小球微环境的微环境,并以不同的染色方式进行了慢性肾脏抑制后肾脏移植后的染色方式。方法:此四步框架包括:1)近似刚性登记,2)细胞和解剖结构分割3)使用新开发的登记算法融合来自不同染色的信息4)特征提取。结果:框架的每个步骤均由病理学家独立验证。提出了可以提取的不同类型的特征的例证。结论:所提出的通用框架允许分析可以分割的大型结构(手动或自动)的微环境。它与分割方法无关,因此适用于各种生物医学研究问题。意义:肾移植后的慢性组织重塑过程会导致间质纤维化和管状萎缩(IFTA)和肾小球硬化。该管道提供了在相同的空间环境中定量分析来自不同连续WSIS的信息的工具,并帮助研究人员了解导致IFTA和肾小球硬化的复杂潜在机制。

Objective: This article presents an automatic image processing framework to extract quantitative high-level information describing the micro-environment of glomeruli in consecutive whole slide images (WSIs) processed with different staining modalities of patients with chronic kidney rejection after kidney transplantation. Methods: This four-step framework consists of: 1) approximate rigid registration, 2) cell and anatomical structure segmentation 3) fusion of information from different stainings using a newly developed registration algorithm 4) feature extraction. Results: Each step of the framework is validated independently both quantitatively and qualitatively by pathologists. An illustration of the different types of features that can be extracted is presented. Conclusion: The proposed generic framework allows for the analysis of the micro-environment surrounding large structures that can be segmented (either manually or automatically). It is independent of the segmentation approach and is therefore applicable to a variety of biomedical research questions. Significance: Chronic tissue remodelling processes after kidney transplantation can result in interstitial fibrosis and tubular atrophy (IFTA) and glomerulosclerosis. This pipeline provides tools to quantitatively analyse, in the same spatial context, information from different consecutive WSIs and help researchers understand the complex underlying mechanisms leading to IFTA and glomerulosclerosis.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源